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h264.h
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1 /*
2  * H.26L/H.264/AVC/JVT/14496-10/... encoder/decoder
3  * Copyright (c) 2003 Michael Niedermayer <michaelni@gmx.at>
4  *
5  * This file is part of FFmpeg.
6  *
7  * FFmpeg is free software; you can redistribute it and/or
8  * modify it under the terms of the GNU Lesser General Public
9  * License as published by the Free Software Foundation; either
10  * version 2.1 of the License, or (at your option) any later version.
11  *
12  * FFmpeg is distributed in the hope that it will be useful,
13  * but WITHOUT ANY WARRANTY; without even the implied warranty of
14  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15  * Lesser General Public License for more details.
16  *
17  * You should have received a copy of the GNU Lesser General Public
18  * License along with FFmpeg; if not, write to the Free Software
19  * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
20  */
21 
22 /**
23  * @file
24  * H.264 / AVC / MPEG4 part10 codec.
25  * @author Michael Niedermayer <michaelni@gmx.at>
26  */
27 
28 #ifndef AVCODEC_H264_H
29 #define AVCODEC_H264_H
30 
31 #include "libavutil/intreadwrite.h"
32 #include "cabac.h"
33 #include "error_resilience.h"
34 #include "get_bits.h"
35 #include "h264chroma.h"
36 #include "h264dsp.h"
37 #include "h264pred.h"
38 #include "h264qpel.h"
39 #include "internal.h"
40 #include "mpegutils.h"
41 #include "parser.h"
42 #include "qpeldsp.h"
43 #include "rectangle.h"
44 #include "videodsp.h"
45 
46 #define H264_MAX_PICTURE_COUNT 36
47 #define H264_MAX_THREADS 32
48 
49 #define MAX_SPS_COUNT 32
50 #define MAX_PPS_COUNT 256
51 
52 #define MAX_MMCO_COUNT 66
53 
54 #define MAX_DELAYED_PIC_COUNT 16
55 
56 #define MAX_MBPAIR_SIZE (256*1024) // a tighter bound could be calculated if someone cares about a few bytes
57 
58 /* Compiling in interlaced support reduces the speed
59  * of progressive decoding by about 2%. */
60 #define ALLOW_INTERLACE
61 
62 #define FMO 0
63 
64 /**
65  * The maximum number of slices supported by the decoder.
66  * must be a power of 2
67  */
68 #define MAX_SLICES 32
69 
70 #ifdef ALLOW_INTERLACE
71 #define MB_MBAFF(h) (h)->mb_mbaff
72 #define MB_FIELD(sl) (sl)->mb_field_decoding_flag
73 #define FRAME_MBAFF(h) (h)->mb_aff_frame
74 #define FIELD_PICTURE(h) ((h)->picture_structure != PICT_FRAME)
75 #define LEFT_MBS 2
76 #define LTOP 0
77 #define LBOT 1
78 #define LEFT(i) (i)
79 #else
80 #define MB_MBAFF(h) 0
81 #define MB_FIELD(sl) 0
82 #define FRAME_MBAFF(h) 0
83 #define FIELD_PICTURE(h) 0
84 #undef IS_INTERLACED
85 #define IS_INTERLACED(mb_type) 0
86 #define LEFT_MBS 1
87 #define LTOP 0
88 #define LBOT 0
89 #define LEFT(i) 0
90 #endif
91 #define FIELD_OR_MBAFF_PICTURE(h) (FRAME_MBAFF(h) || FIELD_PICTURE(h))
92 
93 #ifndef CABAC
94 #define CABAC(h) (h)->pps.cabac
95 #endif
96 
97 #define CHROMA(h) ((h)->sps.chroma_format_idc)
98 #define CHROMA422(h) ((h)->sps.chroma_format_idc == 2)
99 #define CHROMA444(h) ((h)->sps.chroma_format_idc == 3)
100 
101 #define EXTENDED_SAR 255
102 
103 #define MB_TYPE_REF0 MB_TYPE_ACPRED // dirty but it fits in 16 bit
104 #define MB_TYPE_8x8DCT 0x01000000
105 #define IS_REF0(a) ((a) & MB_TYPE_REF0)
106 #define IS_8x8DCT(a) ((a) & MB_TYPE_8x8DCT)
107 
108 #define QP_MAX_NUM (51 + 6*6) // The maximum supported qp
109 
110 /* NAL unit types */
111 enum {
113  NAL_DPA = 2,
114  NAL_DPB = 3,
115  NAL_DPC = 4,
117  NAL_SEI = 6,
118  NAL_SPS = 7,
119  NAL_PPS = 8,
120  NAL_AUD = 9,
126  NAL_FF_IGNORE = 0xff0f001,
127 };
128 
129 /**
130  * SEI message types
131  */
132 typedef enum {
133  SEI_TYPE_BUFFERING_PERIOD = 0, ///< buffering period (H.264, D.1.1)
134  SEI_TYPE_PIC_TIMING = 1, ///< picture timing
135  SEI_TYPE_USER_DATA_ITU_T_T35 = 4, ///< user data registered by ITU-T Recommendation T.35
136  SEI_TYPE_USER_DATA_UNREGISTERED = 5, ///< unregistered user data
137  SEI_TYPE_RECOVERY_POINT = 6, ///< recovery point (frame # to decoder sync)
138  SEI_TYPE_FRAME_PACKING = 45, ///< frame packing arrangement
139  SEI_TYPE_DISPLAY_ORIENTATION = 47, ///< display orientation
140 } SEI_Type;
141 
142 /**
143  * pic_struct in picture timing SEI message
144  */
145 typedef enum {
146  SEI_PIC_STRUCT_FRAME = 0, ///< 0: %frame
147  SEI_PIC_STRUCT_TOP_FIELD = 1, ///< 1: top field
148  SEI_PIC_STRUCT_BOTTOM_FIELD = 2, ///< 2: bottom field
149  SEI_PIC_STRUCT_TOP_BOTTOM = 3, ///< 3: top field, bottom field, in that order
150  SEI_PIC_STRUCT_BOTTOM_TOP = 4, ///< 4: bottom field, top field, in that order
151  SEI_PIC_STRUCT_TOP_BOTTOM_TOP = 5, ///< 5: top field, bottom field, top field repeated, in that order
152  SEI_PIC_STRUCT_BOTTOM_TOP_BOTTOM = 6, ///< 6: bottom field, top field, bottom field repeated, in that order
153  SEI_PIC_STRUCT_FRAME_DOUBLING = 7, ///< 7: %frame doubling
154  SEI_PIC_STRUCT_FRAME_TRIPLING = 8 ///< 8: %frame tripling
156 
157 /**
158  * frame_packing_arrangement types
159  */
160 typedef enum {
168 } SEI_FpaType;
169 
170 /**
171  * Sequence parameter set
172  */
173 typedef struct SPS {
174  unsigned int sps_id;
178  int transform_bypass; ///< qpprime_y_zero_transform_bypass_flag
179  int log2_max_frame_num; ///< log2_max_frame_num_minus4 + 4
180  int poc_type; ///< pic_order_cnt_type
181  int log2_max_poc_lsb; ///< log2_max_pic_order_cnt_lsb_minus4
185  int poc_cycle_length; ///< num_ref_frames_in_pic_order_cnt_cycle
186  int ref_frame_count; ///< num_ref_frames
188  int mb_width; ///< pic_width_in_mbs_minus1 + 1
189  int mb_height; ///< pic_height_in_map_units_minus1 + 1
191  int mb_aff; ///< mb_adaptive_frame_field_flag
193  int crop; ///< frame_cropping_flag
194 
195  /* those 4 are already in luma samples */
196  unsigned int crop_left; ///< frame_cropping_rect_left_offset
197  unsigned int crop_right; ///< frame_cropping_rect_right_offset
198  unsigned int crop_top; ///< frame_cropping_rect_top_offset
199  unsigned int crop_bottom; ///< frame_cropping_rect_bottom_offset
210  uint32_t time_scale;
212  short offset_for_ref_frame[256]; // FIXME dyn aloc?
222  int cpb_cnt; ///< See H.264 E.1.2
223  int initial_cpb_removal_delay_length; ///< initial_cpb_removal_delay_length_minus1 + 1
224  int cpb_removal_delay_length; ///< cpb_removal_delay_length_minus1 + 1
225  int dpb_output_delay_length; ///< dpb_output_delay_length_minus1 + 1
226  int bit_depth_luma; ///< bit_depth_luma_minus8 + 8
227  int bit_depth_chroma; ///< bit_depth_chroma_minus8 + 8
228  int residual_color_transform_flag; ///< residual_colour_transform_flag
229  int constraint_set_flags; ///< constraint_set[0-3]_flag
230  int new; ///< flag to keep track if the decoder context needs re-init due to changed SPS
231 } SPS;
232 
233 /**
234  * Picture parameter set
235  */
236 typedef struct PPS {
237  unsigned int sps_id;
238  int cabac; ///< entropy_coding_mode_flag
239  int pic_order_present; ///< pic_order_present_flag
240  int slice_group_count; ///< num_slice_groups_minus1 + 1
242  unsigned int ref_count[2]; ///< num_ref_idx_l0/1_active_minus1 + 1
243  int weighted_pred; ///< weighted_pred_flag
245  int init_qp; ///< pic_init_qp_minus26 + 26
246  int init_qs; ///< pic_init_qs_minus26 + 26
248  int deblocking_filter_parameters_present; ///< deblocking_filter_parameters_present_flag
249  int constrained_intra_pred; ///< constrained_intra_pred_flag
250  int redundant_pic_cnt_present; ///< redundant_pic_cnt_present_flag
251  int transform_8x8_mode; ///< transform_8x8_mode_flag
254  uint8_t chroma_qp_table[2][QP_MAX_NUM+1]; ///< pre-scaled (with chroma_qp_index_offset) version of qp_table
256 } PPS;
257 
258 /**
259  * Frame Packing Arrangement Type
260  */
261 typedef struct FPA {
263  int frame_packing_arrangement_cancel_flag; ///< is previous arrangement canceled, -1 if never received
268 } FPA;
269 
270 /**
271  * Memory management control operation opcode.
272  */
273 typedef enum MMCOOpcode {
274  MMCO_END = 0,
281 } MMCOOpcode;
282 
283 /**
284  * Memory management control operation.
285  */
286 typedef struct MMCO {
288  int short_pic_num; ///< pic_num without wrapping (pic_num & max_pic_num)
289  int long_arg; ///< index, pic_num, or num long refs depending on opcode
290 } MMCO;
291 
292 typedef struct H264Picture {
295 
297  int8_t *qscale_table;
298 
300  int16_t (*motion_val[2])[2];
301 
303  uint32_t *mb_type;
304 
306  void *hwaccel_picture_private; ///< hardware accelerator private data
307 
309  int8_t *ref_index[2];
310 
311  int field_poc[2]; ///< top/bottom POC
312  int poc; ///< frame POC
313  int frame_num; ///< frame_num (raw frame_num from slice header)
314  int mmco_reset; /**< MMCO_RESET set this 1. Reordering code must
315  not mix pictures before and after MMCO_RESET. */
316  int pic_id; /**< pic_num (short -> no wrap version of pic_num,
317  pic_num & max_pic_num; long -> long_pic_num) */
318  int long_ref; ///< 1->long term reference 0->short term reference
319  int ref_poc[2][2][32]; ///< POCs of the frames/fields used as reference (FIXME need per slice)
320  int ref_count[2][2]; ///< number of entries in ref_poc (FIXME need per slice)
321  int mbaff; ///< 1 -> MBAFF frame 0-> not MBAFF
322  int field_picture; ///< whether or not picture was encoded in separate fields
323 
325  int recovered; ///< picture at IDR or recovery point + recovery count
328 
329  int crop;
331  int crop_top;
332 } H264Picture;
333 
334 typedef struct H264Ref {
336  int linesize[3];
337 
339  int poc;
340  int pic_id;
341 
343 } H264Ref;
344 
345 typedef struct H264SliceContext {
346  struct H264Context *h264;
349 
352  int slice_type_nos; ///< S free slice type (SI/SP are remapped to I/P)
354 
355  int qscale;
356  int chroma_qp[2]; // QPc
357  int qp_thresh; ///< QP threshold to skip loopfilter
359 
360  // deblock
361  int deblocking_filter; ///< disable_deblocking_filter_idc with 1 <-> 0
364 
365  // Weighted pred stuff
370  int luma_weight_flag[2]; ///< 7.4.3.2 luma_weight_lX_flag
371  int chroma_weight_flag[2]; ///< 7.4.3.2 chroma_weight_lX_flag
372  // The following 2 can be changed to int8_t but that causes 10cpu cycles speedloss
373  int luma_weight[48][2][2];
374  int chroma_weight[48][2][2][2];
375  int implicit_weight[48][48][2];
376 
379 
382 
385 
390 
392  int top_type;
395 
398 
400  unsigned int top_samples_available;
403 
404  ptrdiff_t linesize, uvlinesize;
405  ptrdiff_t mb_linesize; ///< may be equal to s->linesize or s->linesize * 2, for mbaff
406  ptrdiff_t mb_uvlinesize;
407 
408  int mb_x, mb_y;
409  int mb_xy;
415 
417  int mb_mbaff; ///< mb_aff_frame && mb_field_decoding_flag
418 
420 
421  /**
422  * number of neighbors (top and/or left) that used 8x8 dct
423  */
425 
429 
430  int cbp;
431  int top_cbp;
432  int left_cbp;
433 
436  int map_col_to_list0[2][16 + 32];
437  int map_col_to_list0_field[2][2][16 + 32];
438 
439  /**
440  * num_ref_idx_l0/1_active_minus1 + 1
441  */
442  unsigned int ref_count[2]; ///< counts frames or fields, depending on current mb mode
443  unsigned int list_count;
444  H264Ref ref_list[2][48]; /**< 0..15: frame refs, 16..47: mbaff field refs.
445  * Reordered version of default_ref_list
446  * according to picture reordering in slice header */
447  int ref2frm[MAX_SLICES][2][64]; ///< reference to frame number lists, used in the loop filter, the first 2 are for -2,-1
448 
450  int16_t *dc_val_base;
451 
454  uint8_t (*top_borders[2])[(16 * 3) * 2];
458 
459  /**
460  * non zero coeff count cache.
461  * is 64 if not available.
462  */
464 
465  /**
466  * Motion vector cache.
467  */
468  DECLARE_ALIGNED(16, int16_t, mv_cache)[2][5 * 8][2];
469  DECLARE_ALIGNED(8, int8_t, ref_cache)[2][5 * 8];
470  DECLARE_ALIGNED(16, uint8_t, mvd_cache)[2][5 * 8][2];
472 
473  DECLARE_ALIGNED(8, uint16_t, sub_mb_type)[4];
474 
475  ///< as a dct coefficient is int32_t in high depth, we need to reserve twice the space.
476  DECLARE_ALIGNED(16, int16_t, mb)[16 * 48 * 2];
477  DECLARE_ALIGNED(16, int16_t, mb_luma_dc)[3][16 * 2];
478  ///< as mb is addressed by scantable[i] and scantable is uint8_t we can either
479  ///< check that i is not too large or ensure that there is some unused stuff after mb
480  int16_t mb_padding[256 * 2];
481 
482  uint8_t (*mvd_table[2])[2];
483 
484  /**
485  * Cabac
486  */
490 
491  // rbsp buffer used for this slice
493  unsigned int rbsp_buffer_size;
495 
496 /**
497  * H264Context
498  */
499 typedef struct H264Context {
507 
512 
515 
516  int pixel_shift; ///< 0 for 8-bit H264, 1 for high-bit-depth H264
517 
518  /* coded dimensions -- 16 * mb w/h */
519  int width, height;
521 
525 
527  int flags;
529 
532 
534 
535 #define LIST_NOT_USED -1 // FIXME rename?
536 #define PART_NOT_AVAILABLE -2
537 
538  /**
539  * block_offset[ 0..23] for frame macroblocks
540  * block_offset[24..47] for field macroblocks
541  */
542  int block_offset[2 * (16 * 3)];
543 
544  uint32_t *mb2b_xy; // FIXME are these 4 a good idea?
545  uint32_t *mb2br_xy;
546  int b_stride; // FIXME use s->b4_stride
547 
548 
549  unsigned current_sps_id; ///< id of the current SPS
550  SPS sps; ///< current sps
551  PPS pps; ///< current pps
552 
553  int au_pps_id; ///< pps_id of current access unit
554 
555  uint32_t dequant4_buffer[6][QP_MAX_NUM + 1][16]; // FIXME should these be moved down?
556  uint32_t dequant8_buffer[6][QP_MAX_NUM + 1][64];
557  uint32_t(*dequant4_coeff[6])[16];
558  uint32_t(*dequant8_coeff[6])[64];
559 
560  uint16_t *slice_table; ///< slice_table_base + 2*mb_stride + 1
561 
562  // interlacing specific flags
566 
567  uint8_t *list_counts; ///< Array of list_count per MB specifying the slice type
568 
569  /* 0x100 -> non null luma_dc, 0x80/0x40 -> non null chroma_dc (cb/cr), 0x?0 -> chroma_cbp(0, 1, 2), 0x0? luma_cbp */
570  uint16_t *cbp_table;
571 
572  /* chroma_pred_mode for i4x4 or i16x16, else 0 */
574  uint8_t (*mvd_table[2])[2];
576 
589 
591 
592  int mb_y;
595  int mb_num;
596 
597  // =============================================================
598  // Things below are not used in the MB or more inner code
599 
602 
603  /**
604  * Used to parse AVC variant of h264
605  */
606  int is_avc; ///< this flag is != 0 if codec is avc1
607  int nal_length_size; ///< Number of bytes used for nal length (1, 2 or 4)
608 
609  int bit_depth_luma; ///< luma bit depth from sps to detect changes
610  int chroma_format_idc; ///< chroma format from sps to detect changes
611 
614 
615  int dequant_coeff_pps; ///< reinit tables when pps changes
616 
617  uint16_t *slice_table_base;
618 
619  // POC stuff
620  int poc_lsb;
621  int poc_msb;
623  int delta_poc[2];
625  int prev_poc_msb; ///< poc_msb of the last reference pic for POC type 0
626  int prev_poc_lsb; ///< poc_lsb of the last reference pic for POC type 0
627  int frame_num_offset; ///< for POC type 2
628  int prev_frame_num_offset; ///< for POC type 2
629  int prev_frame_num; ///< frame_num of the last pic for POC type 1/2
630 
631  /**
632  * frame_num for frames or 2 * frame_num + 1 for field pics.
633  */
635 
636  /**
637  * max_frame_num or 2 * max_frame_num for field pics.
638  */
640 
641  H264Ref default_ref_list[2][32]; ///< base reference list for all slices of a coded picture
648 
649  /**
650  * memory management control operations buffer.
651  */
655 
656  int long_ref_count; ///< number of actual long term references
657  int short_ref_count; ///< number of actual short term references
658 
659  /**
660  * @name Members for slice based multithreading
661  * @{
662  */
663  /**
664  * current slice number, used to initialize slice_num of each thread/context
665  */
667 
668  /**
669  * Max number of threads / contexts.
670  * This is equal to AVCodecContext.thread_count unless
671  * multithreaded decoding is impossible, in which case it is
672  * reduced to 1.
673  */
675 
677 
678  /**
679  * 1 if the single thread fallback warning has already been
680  * displayed, 0 otherwise.
681  */
683 
685 
687  unsigned int last_ref_count[2];
688  /** @} */
689 
690  /**
691  * pic_struct in picture timing SEI message
692  */
694 
695  /**
696  * Complement sei_pic_struct
697  * SEI_PIC_STRUCT_TOP_BOTTOM and SEI_PIC_STRUCT_BOTTOM_TOP indicate interlaced frames.
698  * However, soft telecined frames may have these values.
699  * This is used in an attempt to flag soft telecine progressive.
700  */
702 
703  /**
704  * frame_packing_arrangment SEI message
705  */
710 
711  /**
712  * display orientation SEI message
713  */
717 
718  /**
719  * Bit set of clock types for fields/frames in picture timing SEI message.
720  * For each found ct_type, appropriate bit is set (e.g., bit 1 for
721  * interlaced).
722  */
724 
725  /**
726  * dpb_output_delay in picture timing SEI message, see H.264 C.2.2
727  */
729 
730  /**
731  * cpb_removal_delay in picture timing SEI message, see H.264 C.1.2
732  */
734 
735  /**
736  * recovery_frame_cnt from SEI message
737  *
738  * Set to -1 if no recovery point SEI message found or to number of frames
739  * before playback synchronizes. Frames having recovery point are key
740  * frames.
741  */
743 
744  /**
745  * Are the SEI recovery points looking valid.
746  */
748 
750 
751  /**
752  * recovery_frame is the frame_num at which the next frame should
753  * be fully constructed.
754  *
755  * Set to -1 when not expecting a recovery point.
756  */
758 
759 /**
760  * We have seen an IDR, so all the following frames in coded order are correctly
761  * decodable.
762  */
763 #define FRAME_RECOVERED_IDR (1 << 0)
764 /**
765  * Sufficient number of frames have been decoded since a SEI recovery point,
766  * so all the following frames in presentation order are correct.
767  */
768 #define FRAME_RECOVERED_SEI (1 << 1)
769 
770  int frame_recovered; ///< Initial frame has been completely recovered
771 
773 
775 
776 
777  // Timestamp stuff
778  int sei_buffering_period_present; ///< Buffering period SEI flag
779  int initial_cpb_removal_delay[32]; ///< Initial timestamps for CPBs
780 
783  int16_t slice_row[MAX_SLICES]; ///< to detect when MAX_SLICES is too low
784 
788 
790 
795 
796  /* Motion Estimation */
799 } H264Context;
800 
801 extern const uint8_t ff_h264_chroma_qp[7][QP_MAX_NUM + 1]; ///< One chroma qp table for each possible bit depth (8-14).
802 extern const uint16_t ff_h264_mb_sizes[4];
803 
804 /**
805  * Decode SEI
806  */
808 
809 /**
810  * Decode SPS
811  */
812 int ff_h264_decode_seq_parameter_set(H264Context *h, int ignore_truncation);
813 
814 /**
815  * compute profile from sps
816  */
817 int ff_h264_get_profile(SPS *sps);
818 
819 /**
820  * Decode PPS
821  */
823 
824 /**
825  * Decode a network abstraction layer unit.
826  * @param consumed is the number of bytes used as input
827  * @param length is the length of the array
828  * @param dst_length is the number of decoded bytes FIXME here
829  * or a decode rbsp tailing?
830  * @return decoded bytes, might be src+1 if no escapes
831  */
833  int *dst_length, int *consumed, int length);
834 
835 /**
836  * Free any data that may have been allocated in the H264 context
837  * like SPS, PPS etc.
838  */
840 
841 /**
842  * Reconstruct bitstream slice_type.
843  */
845 
846 /**
847  * Allocate tables.
848  * needs width/height
849  */
851 
852 /**
853  * Fill the default_ref_list.
854  */
856 
860 
861 /**
862  * Execute the reference picture marking (memory management control operations).
863  */
864 int ff_h264_execute_ref_pic_marking(H264Context *h, MMCO *mmco, int mmco_count);
865 
867  int first_slice);
868 
869 int ff_generate_sliding_window_mmcos(H264Context *h, int first_slice);
870 
871 /**
872  * Check if the top & left blocks are available if needed & change the
873  * dc mode so it only uses the available blocks.
874  */
876 
877 /**
878  * Check if the top & left blocks are available if needed & change the
879  * dc mode so it only uses the available blocks.
880  */
882  int mode, int is_chroma);
883 
887 void ff_h264_decode_init_vlc(void);
888 
889 /**
890  * Decode a macroblock
891  * @return 0 if OK, ER_AC_ERROR / ER_DC_ERROR / ER_MV_ERROR on error
892  */
894 
895 /**
896  * Decode a CABAC coded macroblock
897  * @return 0 if OK, ER_AC_ERROR / ER_DC_ERROR / ER_MV_ERROR on error
898  */
900 
902 
904 
908  int *mb_type);
909 
910 void ff_h264_filter_mb_fast(const H264Context *h, H264SliceContext *sl, int mb_x, int mb_y,
911  uint8_t *img_y, uint8_t *img_cb, uint8_t *img_cr,
912  unsigned int linesize, unsigned int uvlinesize);
913 void ff_h264_filter_mb(const H264Context *h, H264SliceContext *sl, int mb_x, int mb_y,
914  uint8_t *img_y, uint8_t *img_cb, uint8_t *img_cr,
915  unsigned int linesize, unsigned int uvlinesize);
916 
917 /**
918  * Reset SEI values at the beginning of the frame.
919  *
920  * @param h H.264 context.
921  */
923 
924 /**
925  * Get stereo_mode string from the h264 frame_packing_arrangement
926  * @param h H.264 context.
927  */
929 
930 /*
931  * o-o o-o
932  * / / /
933  * o-o o-o
934  * ,---'
935  * o-o o-o
936  * / / /
937  * o-o o-o
938  */
939 
940 /* Scan8 organization:
941  * 0 1 2 3 4 5 6 7
942  * 0 DY y y y y y
943  * 1 y Y Y Y Y
944  * 2 y Y Y Y Y
945  * 3 y Y Y Y Y
946  * 4 y Y Y Y Y
947  * 5 DU u u u u u
948  * 6 u U U U U
949  * 7 u U U U U
950  * 8 u U U U U
951  * 9 u U U U U
952  * 10 DV v v v v v
953  * 11 v V V V V
954  * 12 v V V V V
955  * 13 v V V V V
956  * 14 v V V V V
957  * DY/DU/DV are for luma/chroma DC.
958  */
959 
960 #define LUMA_DC_BLOCK_INDEX 48
961 #define CHROMA_DC_BLOCK_INDEX 49
962 
963 // This table must be here because scan8[constant] must be known at compiletime
964 static const uint8_t scan8[16 * 3 + 3] = {
965  4 + 1 * 8, 5 + 1 * 8, 4 + 2 * 8, 5 + 2 * 8,
966  6 + 1 * 8, 7 + 1 * 8, 6 + 2 * 8, 7 + 2 * 8,
967  4 + 3 * 8, 5 + 3 * 8, 4 + 4 * 8, 5 + 4 * 8,
968  6 + 3 * 8, 7 + 3 * 8, 6 + 4 * 8, 7 + 4 * 8,
969  4 + 6 * 8, 5 + 6 * 8, 4 + 7 * 8, 5 + 7 * 8,
970  6 + 6 * 8, 7 + 6 * 8, 6 + 7 * 8, 7 + 7 * 8,
971  4 + 8 * 8, 5 + 8 * 8, 4 + 9 * 8, 5 + 9 * 8,
972  6 + 8 * 8, 7 + 8 * 8, 6 + 9 * 8, 7 + 9 * 8,
973  4 + 11 * 8, 5 + 11 * 8, 4 + 12 * 8, 5 + 12 * 8,
974  6 + 11 * 8, 7 + 11 * 8, 6 + 12 * 8, 7 + 12 * 8,
975  4 + 13 * 8, 5 + 13 * 8, 4 + 14 * 8, 5 + 14 * 8,
976  6 + 13 * 8, 7 + 13 * 8, 6 + 14 * 8, 7 + 14 * 8,
977  0 + 0 * 8, 0 + 5 * 8, 0 + 10 * 8
978 };
979 
980 static av_always_inline uint32_t pack16to32(unsigned a, unsigned b)
981 {
982 #if HAVE_BIGENDIAN
983  return (b & 0xFFFF) + (a << 16);
984 #else
985  return (a & 0xFFFF) + (b << 16);
986 #endif
987 }
988 
989 static av_always_inline uint16_t pack8to16(unsigned a, unsigned b)
990 {
991 #if HAVE_BIGENDIAN
992  return (b & 0xFF) + (a << 8);
993 #else
994  return (a & 0xFF) + (b << 8);
995 #endif
996 }
997 
998 /**
999  * Get the chroma qp.
1000  */
1001 static av_always_inline int get_chroma_qp(const H264Context *h, int t, int qscale)
1002 {
1003  return h->pps.chroma_qp_table[t][qscale];
1004 }
1005 
1006 /**
1007  * Get the predicted intra4x4 prediction mode.
1008  */
1010  H264SliceContext *sl, int n)
1011 {
1012  const int index8 = scan8[n];
1013  const int left = sl->intra4x4_pred_mode_cache[index8 - 1];
1014  const int top = sl->intra4x4_pred_mode_cache[index8 - 8];
1015  const int min = FFMIN(left, top);
1016 
1017  ff_tlog(h->avctx, "mode:%d %d min:%d\n", left, top, min);
1018 
1019  if (min < 0)
1020  return DC_PRED;
1021  else
1022  return min;
1023 }
1024 
1026  H264SliceContext *sl)
1027 {
1028  int8_t *i4x4 = sl->intra4x4_pred_mode + h->mb2br_xy[sl->mb_xy];
1029  int8_t *i4x4_cache = sl->intra4x4_pred_mode_cache;
1030 
1031  AV_COPY32(i4x4, i4x4_cache + 4 + 8 * 4);
1032  i4x4[4] = i4x4_cache[7 + 8 * 3];
1033  i4x4[5] = i4x4_cache[7 + 8 * 2];
1034  i4x4[6] = i4x4_cache[7 + 8 * 1];
1035 }
1036 
1038  H264SliceContext *sl)
1039 {
1040  const int mb_xy = sl->mb_xy;
1041  uint8_t *nnz = h->non_zero_count[mb_xy];
1042  uint8_t *nnz_cache = sl->non_zero_count_cache;
1043 
1044  AV_COPY32(&nnz[ 0], &nnz_cache[4 + 8 * 1]);
1045  AV_COPY32(&nnz[ 4], &nnz_cache[4 + 8 * 2]);
1046  AV_COPY32(&nnz[ 8], &nnz_cache[4 + 8 * 3]);
1047  AV_COPY32(&nnz[12], &nnz_cache[4 + 8 * 4]);
1048  AV_COPY32(&nnz[16], &nnz_cache[4 + 8 * 6]);
1049  AV_COPY32(&nnz[20], &nnz_cache[4 + 8 * 7]);
1050  AV_COPY32(&nnz[32], &nnz_cache[4 + 8 * 11]);
1051  AV_COPY32(&nnz[36], &nnz_cache[4 + 8 * 12]);
1052 
1053  if (!h->chroma_y_shift) {
1054  AV_COPY32(&nnz[24], &nnz_cache[4 + 8 * 8]);
1055  AV_COPY32(&nnz[28], &nnz_cache[4 + 8 * 9]);
1056  AV_COPY32(&nnz[40], &nnz_cache[4 + 8 * 13]);
1057  AV_COPY32(&nnz[44], &nnz_cache[4 + 8 * 14]);
1058  }
1059 }
1060 
1062  H264SliceContext *sl,
1063  int b_stride,
1064  int b_xy, int b8_xy,
1065  int mb_type, int list)
1066 {
1067  int16_t(*mv_dst)[2] = &h->cur_pic.motion_val[list][b_xy];
1068  int16_t(*mv_src)[2] = &sl->mv_cache[list][scan8[0]];
1069  AV_COPY128(mv_dst + 0 * b_stride, mv_src + 8 * 0);
1070  AV_COPY128(mv_dst + 1 * b_stride, mv_src + 8 * 1);
1071  AV_COPY128(mv_dst + 2 * b_stride, mv_src + 8 * 2);
1072  AV_COPY128(mv_dst + 3 * b_stride, mv_src + 8 * 3);
1073  if (CABAC(h)) {
1074  uint8_t (*mvd_dst)[2] = &sl->mvd_table[list][FMO ? 8 * sl->mb_xy
1075  : h->mb2br_xy[sl->mb_xy]];
1076  uint8_t(*mvd_src)[2] = &sl->mvd_cache[list][scan8[0]];
1077  if (IS_SKIP(mb_type)) {
1078  AV_ZERO128(mvd_dst);
1079  } else {
1080  AV_COPY64(mvd_dst, mvd_src + 8 * 3);
1081  AV_COPY16(mvd_dst + 3 + 3, mvd_src + 3 + 8 * 0);
1082  AV_COPY16(mvd_dst + 3 + 2, mvd_src + 3 + 8 * 1);
1083  AV_COPY16(mvd_dst + 3 + 1, mvd_src + 3 + 8 * 2);
1084  }
1085  }
1086 
1087  {
1088  int8_t *ref_index = &h->cur_pic.ref_index[list][b8_xy];
1089  int8_t *ref_cache = sl->ref_cache[list];
1090  ref_index[0 + 0 * 2] = ref_cache[scan8[0]];
1091  ref_index[1 + 0 * 2] = ref_cache[scan8[4]];
1092  ref_index[0 + 1 * 2] = ref_cache[scan8[8]];
1093  ref_index[1 + 1 * 2] = ref_cache[scan8[12]];
1094  }
1095 }
1096 
1098  H264SliceContext *sl,
1099  int mb_type)
1100 {
1101  const int b_stride = h->b_stride;
1102  const int b_xy = 4 * sl->mb_x + 4 * sl->mb_y * h->b_stride; // try mb2b(8)_xy
1103  const int b8_xy = 4 * sl->mb_xy;
1104 
1105  if (USES_LIST(mb_type, 0)) {
1106  write_back_motion_list(h, sl, b_stride, b_xy, b8_xy, mb_type, 0);
1107  } else {
1108  fill_rectangle(&h->cur_pic.ref_index[0][b8_xy],
1109  2, 2, 2, (uint8_t)LIST_NOT_USED, 1);
1110  }
1111  if (USES_LIST(mb_type, 1))
1112  write_back_motion_list(h, sl, b_stride, b_xy, b8_xy, mb_type, 1);
1113 
1114  if (sl->slice_type_nos == AV_PICTURE_TYPE_B && CABAC(h)) {
1115  if (IS_8X8(mb_type)) {
1116  uint8_t *direct_table = &h->direct_table[4 * sl->mb_xy];
1117  direct_table[1] = sl->sub_mb_type[1] >> 1;
1118  direct_table[2] = sl->sub_mb_type[2] >> 1;
1119  direct_table[3] = sl->sub_mb_type[3] >> 1;
1120  }
1121  }
1122 }
1123 
1125 {
1127  return !(AV_RN64A(sl->sub_mb_type) &
1129  0x0001000100010001ULL));
1130  else
1131  return !(AV_RN64A(sl->sub_mb_type) &
1133  0x0001000100010001ULL));
1134 }
1135 
1136 static inline int find_start_code(const uint8_t *buf, int buf_size,
1137  int buf_index, int next_avc)
1138 {
1139  uint32_t state = -1;
1140 
1141  buf_index = avpriv_find_start_code(buf + buf_index, buf + next_avc + 1, &state) - buf - 1;
1142 
1143  return FFMIN(buf_index, buf_size);
1144 }
1145 
1146 static inline int get_avc_nalsize(H264Context *h, const uint8_t *buf,
1147  int buf_size, int *buf_index)
1148 {
1149  int i, nalsize = 0;
1150 
1151  if (*buf_index >= buf_size - h->nal_length_size)
1152  return -1;
1153 
1154  for (i = 0; i < h->nal_length_size; i++)
1155  nalsize = ((unsigned)nalsize << 8) | buf[(*buf_index)++];
1156  if (nalsize <= 0 || nalsize > buf_size - *buf_index) {
1158  "AVC: nal size %d\n", nalsize);
1159  return -1;
1160  }
1161  return nalsize;
1162 }
1163 
1164 int ff_h264_field_end(H264Context *h, H264SliceContext *sl, int in_setup);
1165 
1168 
1170 
1171 void ff_h264_draw_horiz_band(const H264Context *h, H264SliceContext *sl, int y, int height);
1172 int ff_init_poc(H264Context *h, int pic_field_poc[2], int *pic_poc);
1175 
1177 #define SLICE_SINGLETHREAD 1
1178 #define SLICE_SKIPED 2
1179 
1180 int ff_h264_execute_decode_slices(H264Context *h, unsigned context_count);
1182  const AVCodecContext *src);
1183 
1185 
1187 
1189 
1190 #endif /* AVCODEC_H264_H */
int ff_init_poc(H264Context *h, int pic_field_poc[2], int *pic_poc)
Definition: h264.c:1105
int chroma_format_idc
Definition: h264.h:177
struct H264Context * h264
Definition: h264.h:346
int video_signal_type_present_flag
Definition: h264.h:202
int last_slice_type
Definition: h264.h:686
const uint8_t * left_block
Definition: h264.h:396
#define ff_tlog(ctx,...)
Definition: internal.h:60
void ff_h264_unref_picture(H264Context *h, H264Picture *pic)
Definition: h264_picture.c:47
Memory management control operation.
Definition: h264.h:286
int workaround_bugs
Definition: h264.h:528
int long_ref
1->long term reference 0->short term reference
Definition: h264.h:318
int single_decode_warning
1 if the single thread fallback warning has already been displayed, 0 otherwise.
Definition: h264.h:682
int col_parity
Definition: h264.h:427
GetBitContext gb
Definition: h264.h:506
int sei_recovery_frame_cnt
Definition: h264.h:327
int ff_h264_slice_context_init(H264Context *h, H264SliceContext *sl)
Init context Allocate buffers which are not shared amongst multiple threads.
Definition: h264.c:459
int ff_h264_execute_decode_slices(H264Context *h, unsigned context_count)
Call decode_slice() for each context.
Definition: h264_slice.c:2479
int16_t mb[16 *48 *2]
Definition: h264.h:476
5: top field, bottom field, top field repeated, in that order
Definition: h264.h:151
int topright_mb_xy
Definition: h264.h:388
int sei_cpb_removal_delay
cpb_removal_delay in picture timing SEI message, see H.264 C.1.2
Definition: h264.h:733
int low_delay
Definition: h264.h:524
int mb_num
Definition: h264.h:595
int ff_h264_decode_ref_pic_list_reordering(H264Context *h, H264SliceContext *sl)
Definition: h264_refs.c:220
This structure describes decoded (raw) audio or video data.
Definition: frame.h:171
int mb_aff_frame
Definition: h264.h:563
int topleft_partition
Definition: h264.h:397
uint8_t parse_history[6]
Definition: h264.h:785
int16_t mv_cache[2][5 *8][2]
Motion vector cache.
Definition: h264.h:468
int delta_poc[2]
Definition: h264.h:623
ptrdiff_t const GLvoid * data
Definition: opengl_enc.c:101
int neighbor_transform_size
number of neighbors (top and/or left) that used 8x8 dct
Definition: h264.h:424
int dist_scale_factor[32]
Definition: h264.h:434
int mb_index_end
Definition: h264.h:412
#define LEFT_MBS
Definition: h264.h:75
int luma_weight[48][2][2]
Definition: h264.h:373
int quincunx_subsampling
Definition: h264.h:709
int edge_emu_buffer_allocated
Definition: h264.h:456
3: top field, bottom field, in that order
Definition: h264.h:149
#define H264_MAX_PICTURE_COUNT
Definition: h264.h:46
int first_field
Definition: h264.h:565
int ff_h264_decode_mb_cavlc(const H264Context *h, H264SliceContext *sl)
Decode a macroblock.
Definition: h264_cavlc.c:709
uint8_t field_scan8x8_q0[64]
Definition: h264.h:587
unregistered user data
Definition: h264.h:136
int weighted_bipred_idc
Definition: h264.h:244
int left_mb_xy[LEFT_MBS]
Definition: h264.h:389
int chroma_qp_index_offset[2]
Definition: h264.h:247
unsigned int topleft_samples_available
Definition: h264.h:399
H264ChromaContext h264chroma
Definition: h264.h:504
uint16_t * cbp_table
Definition: h264.h:570
int scaling_matrix_present
Definition: h264.h:215
MMCO mmco[MAX_MMCO_COUNT]
memory management control operations buffer.
Definition: h264.h:652
uint8_t scaling_matrix4[6][16]
Definition: h264.h:216
uint8_t mvd_cache[2][5 *8][2]
Definition: h264.h:470
7: frame doubling
Definition: h264.h:153
#define MAX_PPS_COUNT
Definition: h264.h:50
Sequence parameter set.
Definition: h264.h:173
int initial_cpb_removal_delay[32]
Initial timestamps for CPBs.
Definition: h264.h:779
int mb_y
Definition: h264.h:592
int coded_picture_number
Definition: h264.h:523
int bitstream_restriction_flag
Definition: h264.h:213
unsigned int ref_count[2]
num_ref_idx_l0/1_active_minus1 + 1
Definition: h264.h:242
#define FMO
Definition: h264.h:62
AVBufferRef * mb_type_buf
Definition: h264.h:302
int bipred_scratchpad_allocated
Definition: h264.h:455
const char * b
Definition: vf_curves.c:109
void ff_h264_direct_ref_list_init(const H264Context *const h, H264SliceContext *sl)
Definition: h264_direct.c:110
AVBufferPool * mb_type_pool
Definition: h264.h:792
int chroma_x_shift
Definition: h264.h:520
qpel_mc_func(* qpel_put)[16]
Definition: h264.h:797
void ff_h264_filter_mb_fast(const H264Context *h, H264SliceContext *sl, int mb_x, int mb_y, uint8_t *img_y, uint8_t *img_cb, uint8_t *img_cr, unsigned int linesize, unsigned int uvlinesize)
Picture parameter set.
Definition: h264.h:236
int prev_mb_skipped
Definition: h264.h:377
int crop
Definition: h264.h:329
#define DECLARE_ALIGNED(n, t, v)
Definition: mem.h:53
int16_t(*[2] motion_val)[2]
Definition: h264.h:300
int flags
Definition: h264.h:527
int frame_mbs_only_flag
Definition: h264.h:190
int mb_height
Definition: h264.h:593
H264Picture * delayed_pic[MAX_DELAYED_PIC_COUNT+2]
Definition: h264.h:644
int is_avc
Used to parse AVC variant of h264.
Definition: h264.h:606
int mmco_index
Definition: h264.h:653
AVBufferPool * ref_index_pool
Definition: h264.h:794
MMCOOpcode
Memory management control operation opcode.
Definition: h264.h:273
uint8_t zigzag_scan8x8_cavlc[64]
Definition: h264.h:579
void(* qpel_mc_func)(uint8_t *dst, const uint8_t *src, ptrdiff_t stride)
Definition: qpeldsp.h:65
uint32_t dequant8_buffer[6][QP_MAX_NUM+1][64]
Definition: h264.h:556
void ff_h264_decode_init_vlc(void)
Definition: h264_cavlc.c:327
H264Context.
Definition: h264.h:499
int16_t mb_padding[256 *2]
Definition: h264.h:480
static av_always_inline void write_back_motion(const H264Context *h, H264SliceContext *sl, int mb_type)
Definition: h264.h:1097
AVFrame * f
Definition: h264.h:293
static av_always_inline void write_back_non_zero_count(const H264Context *h, H264SliceContext *sl)
Definition: h264.h:1037
int prev_poc_msb
poc_msb of the last reference pic for POC type 0
Definition: h264.h:625
int chroma_qp_diff
Definition: h264.h:255
int frame_packing_arrangement_repetition_period
Definition: h264.h:265
uint32_t num_units_in_tick
Definition: h264.h:209
void ff_h264_filter_mb(const H264Context *h, H264SliceContext *sl, int mb_x, int mb_y, uint8_t *img_y, uint8_t *img_cb, uint8_t *img_cr, unsigned int linesize, unsigned int uvlinesize)
4: bottom field, top field, in that order
Definition: h264.h:150
H264Picture * long_ref[32]
Definition: h264.h:643
int picture_structure
Definition: h264.h:564
Definition: h264.h:117
H264Ref default_ref_list[2][32]
base reference list for all slices of a coded picture
Definition: h264.h:641
#define AV_COPY32(d, s)
Definition: intreadwrite.h:586
int luma_weight_flag[2]
7.4.3.2 luma_weight_lX_flag
Definition: h264.h:370
int profile_idc
Definition: h264.h:175
int frame_packing_arrangement_id
Definition: h264.h:262
unsigned current_sps_id
id of the current SPS
Definition: h264.h:549
MMCOOpcode opcode
Definition: h264.h:287
AVColorTransferCharacteristic
Color Transfer Characteristic.
Definition: pixfmt.h:477
H.264 DSP functions.
unsigned int ref_count[2]
num_ref_idx_l0/1_active_minus1 + 1
Definition: h264.h:442
Definition: h264.h:118
void ff_h264_free_context(H264Context *h)
Free any data that may have been allocated in the H264 context like SPS, PPS etc. ...
Definition: h264.c:1851
int topleft_mb_xy
Definition: h264.h:386
uint8_t * chroma_pred_mode_table
Definition: h264.h:573
void ff_h264_pred_direct_motion(const H264Context *const h, H264SliceContext *sl, int *mb_type)
Definition: h264_direct.c:702
unsigned int crop_top
frame_cropping_rect_top_offset
Definition: h264.h:198
#define USES_LIST(a, list)
Definition: mpegutils.h:95
int fixed_frame_rate_flag
Definition: h264.h:211
static av_always_inline uint16_t pack8to16(unsigned a, unsigned b)
Definition: h264.h:989
int is_complex
Definition: h264.h:414
uint8_t scaling_matrix4[6][16]
Definition: h264.h:252
Definition: h264.h:119
int parse_history_count
Definition: h264.h:786
int deblocking_filter_parameters_present
deblocking_filter_parameters_present_flag
Definition: h264.h:248
uint16_t sub_mb_type[4]
as a dct coefficient is int32_t in high depth, we need to reserve twice the space.
Definition: h264.h:473
int short_pic_num
pic_num without wrapping (pic_num & max_pic_num)
Definition: h264.h:288
Definition: h264.h:334
uint32_t(*[6] dequant4_coeff)[16]
Definition: h264.h:557
uint8_t
int prev_frame_num_offset
for POC type 2
Definition: h264.h:628
SEI_FpaType frame_packing_arrangement_type
Definition: h264.h:264
int full_range
Definition: h264.h:203
unsigned int crop_left
frame_cropping_rect_left_offset
Definition: h264.h:196
int offset_for_non_ref_pic
Definition: h264.h:183
mode
Definition: f_perms.c:27
int ff_h264_check_intra_pred_mode(const H264Context *h, H264SliceContext *sl, int mode, int is_chroma)
Check if the top & left blocks are available if needed & change the dc mode so it only uses the avail...
Definition: h264.c:184
void ff_h264_reset_sei(H264Context *h)
Reset SEI values at the beginning of the frame.
Definition: h264_sei.c:37
int gaps_in_frame_num_allowed_flag
Definition: h264.h:187
int slice_alpha_c0_offset
Definition: h264.h:362
int poc
Definition: h264.h:339
int field_picture
whether or not picture was encoded in separate fields
Definition: h264.h:322
int bit_depth_chroma
bit_depth_chroma_minus8 + 8
Definition: h264.h:227
AVColorSpace
YUV colorspace type.
Definition: pixfmt.h:500
int ff_h264_alloc_tables(H264Context *h)
Allocate tables.
Definition: h264.c:398
enum AVColorPrimaries color_primaries
Definition: h264.h:205
int poc
frame POC
Definition: h264.h:312
void ff_h264_direct_dist_scale_factor(const H264Context *const h, H264SliceContext *sl)
Definition: h264_direct.c:51
int slice_type
Definition: h264.h:351
int ff_h264_check_intra4x4_pred_mode(const H264Context *h, H264SliceContext *sl)
Check if the top & left blocks are available if needed & change the dc mode so it only uses the avail...
Definition: h264.c:137
int cabac
entropy_coding_mode_flag
Definition: h264.h:238
static int find_start_code(const uint8_t *buf, int buf_size, int buf_index, int next_avc)
Definition: h264.h:1136
unsigned int crop_right
frame_cropping_rect_right_offset
Definition: h264.h:197
SEI_PicStructType
pic_struct in picture timing SEI message
Definition: h264.h:145
unsigned int last_ref_count[2]
Definition: h264.h:687
uint8_t(*[2] top_borders)[(16 *3)*2]
Definition: h264.h:454
int invalid_gap
Definition: h264.h:326
Context for storing H.264 prediction functions.
Definition: h264pred.h:92
quarterpel DSP functions
int frame_recovered
Initial frame has been completely recovered.
Definition: h264.h:770
int map_col_to_list0_field[2][2][16+32]
Definition: h264.h:437
int height
Definition: h264.h:519
static av_always_inline int pred_intra_mode(const H264Context *h, H264SliceContext *sl, int n)
Get the predicted intra4x4 prediction mode.
Definition: h264.h:1009
int transform_bypass
qpprime_y_zero_transform_bypass_flag
Definition: h264.h:178
qpel_mc_func(* qpel_avg)[16]
Definition: h264.h:798
int redundant_pic_cnt_present
redundant_pic_cnt_present_flag
Definition: h264.h:250
bitstream reader API header.
int chroma_y_shift
Definition: h264.h:520
#define MAX_DELAYED_PIC_COUNT
Definition: h264.h:54
static void fill_rectangle(SDL_Surface *screen, int x, int y, int w, int h, int color, int update)
Definition: ffplay.c:780
ptrdiff_t size
Definition: opengl_enc.c:101
AVBufferRef * qscale_table_buf
Definition: h264.h:296
SEI_Type
SEI message types.
Definition: h264.h:132
H264Picture * parent
Definition: h264.h:342
int ff_h264_decode_mb_cabac(const H264Context *h, H264SliceContext *sl)
Decode a CABAC coded macroblock.
Definition: h264_cabac.c:1911
AVColorPrimaries
Chromaticity coordinates of the source primaries.
Definition: pixfmt.h:459
int recovered
picture at IDR or recovery point + recovery count
Definition: h264.h:325
#define AV_COPY64(d, s)
Definition: intreadwrite.h:590
int ff_h264_fill_default_ref_list(H264Context *h, H264SliceContext *sl)
Fill the default_ref_list.
Definition: h264_refs.c:125
int chroma_qp[2]
Definition: h264.h:356
#define av_log(a,...)
int sei_vflip
Definition: h264.h:716
The buffer pool.
const uint8_t * avpriv_find_start_code(const uint8_t *p, const uint8_t *end, uint32_t *state)
int resync_mb_x
Definition: h264.h:410
unsigned int rbsp_buffer_size
Definition: h264.h:493
int last_pocs[MAX_DELAYED_PIC_COUNT]
Definition: h264.h:645
int width
Definition: h264.h:519
#define MAX_SLICES
The maximum number of slices supported by the decoder.
Definition: h264.h:68
int slice_num
Definition: h264.h:350
int frame_num
Definition: h264.h:624
unsigned int topright_samples_available
Definition: h264.h:401
void ff_h264_hl_decode_mb(const H264Context *h, H264SliceContext *sl)
Definition: h264_mb.c:818
const uint8_t ff_h264_chroma_qp[7][QP_MAX_NUM+1]
One chroma qp table for each possible bit depth (8-14).
Definition: h264_ps.c:53
enum AVColorTransferCharacteristic color_trc
Definition: h264.h:206
int mb_aff
mb_adaptive_frame_field_flag
Definition: h264.h:191
H264PredContext hpc
Definition: h264.h:531
#define AV_LOG_ERROR
Something went wrong and cannot losslessly be recovered.
Definition: log.h:176
static av_always_inline int get_dct8x8_allowed(const H264Context *h, H264SliceContext *sl)
Definition: h264.h:1124
int16_t * dc_val_base
Definition: h264.h:450
int poc_type
pic_order_cnt_type
Definition: h264.h:180
int context_initialized
Definition: h264.h:526
static av_always_inline void write_back_intra_pred_mode(const H264Context *h, H264SliceContext *sl)
Definition: h264.h:1025
int constrained_intra_pred
constrained_intra_pred_flag
Definition: h264.h:249
ERContext er
Definition: h264.h:348
int nal_unit_type
Definition: h264.h:601
Definition: h264.h:115
int num_reorder_frames
Definition: h264.h:214
void * hwaccel_picture_private
hardware accelerator private data
Definition: h264.h:306
int map_col_to_list0[2][16+32]
Definition: h264.h:436
int ff_h264_decode_extradata(H264Context *h, const uint8_t *buf, int size)
Definition: h264.c:527
int time_offset_length
Definition: h264.h:221
int8_t intra4x4_pred_mode_cache[5 *8]
Definition: h264.h:383
SEI_FpaType
frame_packing_arrangement types
Definition: h264.h:160
int parse_last_mb
Definition: h264.h:787
PPS pps
current pps
Definition: h264.h:551
int deblocking_filter
disable_deblocking_filter_idc with 1 <-> 0
Definition: h264.h:361
uint8_t(*[2] mvd_table)[2]
Definition: h264.h:574
int prev_interlaced_frame
Complement sei_pic_struct SEI_PIC_STRUCT_TOP_BOTTOM and SEI_PIC_STRUCT_BOTTOM_TOP indicate interlaced...
Definition: h264.h:701
int ref_poc[2][2][32]
POCs of the frames/fields used as reference (FIXME need per slice)
Definition: h264.h:319
ThreadFrame tf
Definition: h264.h:294
0: frame
Definition: h264.h:146
int weighted_pred
weighted_pred_flag
Definition: h264.h:243
GLsizei GLsizei * length
Definition: opengl_enc.c:115
#define IS_SKIP(a)
Definition: mpegutils.h:77
H264QpelContext h264qpel
Definition: h264.h:505
int direct_spatial_mv_pred
Definition: h264.h:426
#define CABAC(h)
Definition: h264.h:94
unsigned int top_samples_available
Definition: h264.h:400
int frame_num
frame_num (raw frame_num from slice header)
Definition: h264.h:313
static av_always_inline uint32_t pack16to32(unsigned a, unsigned b)
Definition: h264.h:980
int valid_recovery_point
Are the SEI recovery points looking valid.
Definition: h264.h:747
int residual_color_transform_flag
residual_colour_transform_flag
Definition: h264.h:228
uint8_t * list_counts
Array of list_count per MB specifying the slice type.
Definition: h264.h:567
int delta_pic_order_always_zero_flag
Definition: h264.h:182
int offset_for_top_to_bottom_field
Definition: h264.h:184
int slice_type_nos
S free slice type (SI/SP are remapped to I/P)
Definition: h264.h:352
int ff_h264_decode_slice_header(H264Context *h, H264SliceContext *sl)
Decode a slice header.
Definition: h264_slice.c:1140
uint8_t zigzag_scan8x8[64]
Definition: h264.h:578
int mb_skip_run
Definition: h264.h:413
AVBufferRef * hwaccel_priv_buf
Definition: h264.h:305
static const uint8_t scan8[16 *3+3]
Definition: h264.h:964
const uint16_t ff_h264_mb_sizes[4]
Definition: h264.c:54
int crop_left
Definition: h264.h:330
uint8_t cabac_state[1024]
Definition: h264.h:488
int crop
frame_cropping_flag
Definition: h264.h:193
int ff_h264_decode_init(AVCodecContext *avctx)
Definition: h264.c:644
int pic_id
Definition: h264.h:340
int16_t mb_luma_dc[3][16 *2]
as mb is addressed by scantable[i] and scantable is uint8_t we can either check that i is not too lar...
Definition: h264.h:477
int content_interpretation_type
Definition: h264.h:266
uint8_t * direct_table
Definition: h264.h:575
int use_weight
Definition: h264.h:366
uint8_t scaling_matrix8[6][64]
Definition: h264.h:253
int nal_length_size
Number of bytes used for nal length (1, 2 or 4)
Definition: h264.h:607
useful rectangle filling function
AVBufferRef * motion_val_buf[2]
Definition: h264.h:299
int sei_anticlockwise_rotation
Definition: h264.h:715
Context for storing H.264 DSP functions.
Definition: h264dsp.h:41
int ref_frame_count
num_ref_frames
Definition: h264.h:186
Definition: h264.h:114
int frame_num_offset
for POC type 2
Definition: h264.h:627
int chroma_pred_mode
Definition: h264.h:380
#define AV_COPY16(d, s)
Definition: intreadwrite.h:582
int initial_cpb_removal_delay_length
initial_cpb_removal_delay_length_minus1 + 1
Definition: h264.h:223
FPA sei_fpa
Definition: h264.h:749
int x264_build
Definition: h264.h:590
uint32_t * mb2br_xy
Definition: h264.h:545
const uint8_t * ff_h264_decode_nal(H264Context *h, H264SliceContext *sl, const uint8_t *src, int *dst_length, int *consumed, int length)
Decode a network abstraction layer unit.
Definition: h264.c:226
#define MB_TYPE_DIRECT2
Definition: avcodec.h:902
#define FFMIN(a, b)
Definition: common.h:66
uint16_t * slice_table
slice_table_base + 2*mb_stride + 1
Definition: h264.h:560
uint8_t field_scan8x8_cavlc[64]
Definition: h264.h:582
float y
int poc_cycle_length
num_ref_frames_in_pic_order_cnt_cycle
Definition: h264.h:185
CABACContext cabac
Cabac.
Definition: h264.h:487
int colour_description_present_flag
Definition: h264.h:204
int reference
Definition: h264.h:324
AVRational sar
Definition: h264.h:201
int sei_frame_packing_present
frame_packing_arrangment SEI message
Definition: h264.h:706
int redundant_pic_count
Definition: h264.h:419
int nb_slice_ctx
Definition: h264.h:514
int long_ref_count
number of actual long term references
Definition: h264.h:656
uint32_t * mb_type
Definition: h264.h:303
int ff_h264_ref_picture(H264Context *h, H264Picture *dst, H264Picture *src)
Definition: h264_picture.c:68
int top_mb_xy
Definition: h264.h:387
SPS sps
current sps
Definition: h264.h:550
int next_mb_skipped
Definition: h264.h:378
PPS * pps_buffers[MAX_PPS_COUNT]
Definition: h264.h:613
int sei_hflip
Definition: h264.h:716
#define MAX_SPS_COUNT
Definition: h264.h:49
uint8_t chroma_qp_table[2][QP_MAX_NUM+1]
pre-scaled (with chroma_qp_index_offset) version of qp_table
Definition: h264.h:254
int ff_h264_decode_picture_parameter_set(H264Context *h, int bit_length)
Decode PPS.
Definition: h264_ps.c:589
void ff_h264_free_tables(H264Context *h)
Definition: h264.c:355
int init_qp
pic_init_qp_minus26 + 26
Definition: h264.h:245
int mmco_reset
Definition: h264.h:654
H264SliceContext * slice_ctx
Definition: h264.h:513
int direct_8x8_inference_flag
Definition: h264.h:192
int n
Definition: avisynth_c.h:547
int poc_lsb
Definition: h264.h:620
int reference
Definition: h264.h:338
int max_pic_num
max_frame_num or 2 * max_frame_num for field pics.
Definition: h264.h:639
int top_borders_allocated[2]
Definition: h264.h:457
int ff_generate_sliding_window_mmcos(H264Context *h, int first_slice)
Definition: h264_refs.c:568
uint8_t scaling_matrix8[6][64]
Definition: h264.h:217
frame packing arrangement
Definition: h264.h:138
int curr_pic_num
frame_num for frames or 2 * frame_num + 1 for field pics.
Definition: h264.h:634
int chroma_log2_weight_denom
Definition: h264.h:369
uint32_t dequant4_buffer[6][QP_MAX_NUM+1][16]
Definition: h264.h:555
void ff_h264_init_cabac_states(const H264Context *h, H264SliceContext *sl)
Definition: h264_cabac.c:1264
unsigned int sps_id
Definition: h264.h:174
uint8_t * edge_emu_buffer
Definition: h264.h:453
int ff_h264_get_slice_type(const H264SliceContext *sl)
Reconstruct bitstream slice_type.
Definition: h264_slice.c:1897
int top_type
Definition: h264.h:392
int dequant_coeff_pps
reinit tables when pps changes
Definition: h264.h:615
int pic_order_present
pic_order_present_flag
Definition: h264.h:239
SPS * sps_buffers[MAX_SPS_COUNT]
Definition: h264.h:612
uint8_t zigzag_scan_q0[16]
Definition: h264.h:583
int bit_depth_luma
luma bit depth from sps to detect changes
Definition: h264.h:609
int topleft_type
Definition: h264.h:391
short offset_for_ref_frame[256]
Definition: h264.h:212
int chroma_format_idc
chroma format from sps to detect changes
Definition: h264.h:610
VideoDSPContext vdsp
Definition: h264.h:502
int intra16x16_pred_mode
Definition: h264.h:381
int timing_info_present_flag
Definition: h264.h:208
int ff_h264_execute_ref_pic_marking(H264Context *h, MMCO *mmco, int mmco_count)
Execute the reference picture marking (memory management control operations).
Definition: h264_refs.c:600
int mb_stride
Definition: h264.h:594
int vcl_hrd_parameters_present_flag
Definition: h264.h:219
AVCodecContext * avctx
Definition: h264.h:501
uint8_t zigzag_scan8x8_q0[64]
Definition: h264.h:584
AVS_Value src
Definition: avisynth_c.h:482
#define MB_TYPE_8x16
Definition: avcodec.h:899
int last_qscale_diff
Definition: h264.h:358
user data registered by ITU-T Recommendation T.35
Definition: h264.h:135
1: top field
Definition: h264.h:147
void ff_h264_remove_all_refs(H264Context *h)
Definition: h264_refs.c:491
int prev_frame_num
frame_num of the last pic for POC type 1/2
Definition: h264.h:629
H264Picture * short_ref[32]
Definition: h264.h:642
int next_outputed_poc
Definition: h264.h:647
int ff_h264_decode_sei(H264Context *h)
Decode SEI.
Definition: h264_sei.c:282
int poc_msb
Definition: h264.h:621
int field_poc[2]
top/bottom POC
Definition: h264.h:311
int recovery_frame
recovery_frame is the frame_num at which the next frame should be fully constructed.
Definition: h264.h:757
int max_contexts
Max number of threads / contexts.
Definition: h264.h:674
main external API structure.
Definition: avcodec.h:1241
int qp_thresh
QP threshold to skip loopfilter.
Definition: h264.h:357
int dpb_output_delay_length
dpb_output_delay_length_minus1 + 1
Definition: h264.h:225
Definition: h264.h:274
int vui_parameters_present_flag
Definition: h264.h:200
2: bottom field
Definition: h264.h:148
#define QP_MAX_NUM
Definition: h264.h:108
void * buf
Definition: avisynth_c.h:553
int resync_mb_y
Definition: h264.h:411
int frame_packing_arrangement_type
Definition: h264.h:707
int8_t * qscale_table
Definition: h264.h:297
int constraint_set_flags
constraint_set[0-3]_flag
Definition: h264.h:229
SEI_PicStructType sei_pic_struct
pic_struct in picture timing SEI message
Definition: h264.h:693
static av_always_inline void write_back_motion_list(const H264Context *h, H264SliceContext *sl, int b_stride, int b_xy, int b8_xy, int mb_type, int list)
Definition: h264.h:1061
BYTE int const BYTE int int int height
Definition: avisynth_c.h:676
int ff_h264_update_thread_context(AVCodecContext *dst, const AVCodecContext *src)
Definition: h264_slice.c:434
static int get_avc_nalsize(H264Context *h, const uint8_t *buf, int buf_size, int *buf_index)
Definition: h264.h:1146
Describe the class of an AVClass context structure.
Definition: log.h:67
uint8_t non_zero_count_cache[15 *8]
non zero coeff count cache.
Definition: h264.h:463
uint32_t(*[6] dequant8_coeff)[64]
Definition: h264.h:558
Definition: h264.h:120
rational number numerator/denominator
Definition: rational.h:43
int8_t * ref_index[2]
Definition: h264.h:309
#define MAX_MMCO_COUNT
Definition: h264.h:52
int use_weight_chroma
Definition: h264.h:367
int pixel_shift
0 for 8-bit H264, 1 for high-bit-depth H264
Definition: h264.h:516
int mmco_reset
MMCO_RESET set this 1.
Definition: h264.h:314
int ff_h264_decode_ref_pic_marking(H264Context *h, GetBitContext *gb, int first_slice)
Definition: h264_refs.c:801
H264Picture * cur_pic_ptr
Definition: h264.h:509
ptrdiff_t mb_uvlinesize
Definition: h264.h:406
int mb_mbaff
mb_aff_frame && mb_field_decoding_flag
Definition: h264.h:417
uint8_t direct_cache[5 *8]
Definition: h264.h:471
AVPictureType
Definition: avutil.h:265
int enable_er
Definition: h264.h:789
display orientation
Definition: h264.h:139
unsigned int sps_id
Definition: h264.h:237
int frame_packing_arrangement_cancel_flag
is previous arrangement canceled, -1 if never received
Definition: h264.h:263
int log2_max_poc_lsb
log2_max_pic_order_cnt_lsb_minus4
Definition: h264.h:181
6: bottom field, top field, bottom field repeated, in that order
Definition: h264.h:152
int sei_buffering_period_present
Buffering period SEI flag.
Definition: h264.h:778
ptrdiff_t mb_linesize
may be equal to s->linesize or s->linesize * 2, for mbaff
Definition: h264.h:405
int16_t slice_row[MAX_SLICES]
to detect when MAX_SLICES is too low
Definition: h264.h:783
int col_fieldoff
Definition: h264.h:428
ptrdiff_t linesize
Definition: h264.h:404
int block_offset[2 *(16 *3)]
block_offset[ 0..23] for frame macroblocks block_offset[24..47] for field macroblocks ...
Definition: h264.h:542
int quincunx_sampling_flag
Definition: h264.h:267
uint32_t time_scale
Definition: h264.h:210
int linesize[3]
Definition: h264.h:336
int transform_8x8_mode
transform_8x8_mode_flag
Definition: h264.h:251
static uint32_t state
Definition: trasher.c:27
ptrdiff_t uvlinesize
Definition: h264.h:404
H.264 / AVC / MPEG4 prediction functions.
int pic_struct_present_flag
Definition: h264.h:220
uint8_t zigzag_scan[16]
Definition: h264.h:577
unsigned int list_count
Definition: h264.h:443
picture timing
Definition: h264.h:134
Definition: vp9.h:48
#define AV_ZERO128(d)
Definition: intreadwrite.h:622
int ff_set_ref_count(H264Context *h, H264SliceContext *sl)
Definition: h264.c:1210
int has_recovery_point
Definition: h264.h:772
int left_type[LEFT_MBS]
Definition: h264.h:394
int mbaff
1 -> MBAFF frame 0-> not MBAFF
Definition: h264.h:321
A reference to a data buffer.
Definition: buffer.h:81
void ff_h264_flush_change(H264Context *h)
Definition: h264.c:1056
int ff_h264_decode_seq_parameter_set(H264Context *h, int ignore_truncation)
Decode SPS.
Definition: h264_ps.c:303
AVBufferPool * qscale_table_pool
Definition: h264.h:791
H264Picture * next_output_pic
Definition: h264.h:646
int slice_context_count
Definition: h264.h:676
AVBufferPool * motion_val_pool
Definition: h264.h:793
int mb_height
pic_height_in_map_units_minus1 + 1
Definition: h264.h:189
int topright_type
Definition: h264.h:393
int init_qs
pic_init_qs_minus26 + 26
Definition: h264.h:246
int pic_id
pic_num (short -> no wrap version of pic_num, pic_num & max_pic_num; long -> long_pic_num) ...
Definition: h264.h:316
common internal api header.
#define AV_COPY128(d, s)
Definition: intreadwrite.h:594
int nal_hrd_parameters_present_flag
Definition: h264.h:218
uint16_t * slice_table_base
Definition: h264.h:617
int log2_max_frame_num
log2_max_frame_num_minus4 + 4
Definition: h264.h:179
int missing_fields
Definition: h264.h:774
#define MB_TYPE_8x8
Definition: avcodec.h:900
int ff_pred_weight_table(H264Context *h, H264SliceContext *sl)
Definition: h264.c:968
void ff_h264_fill_mbaff_ref_list(H264Context *h, H264SliceContext *sl)
Definition: h264_refs.c:351
Bi-dir predicted.
Definition: avutil.h:269
const char * ff_h264_sei_stereo_mode(H264Context *h)
Get stereo_mode string from the h264 frame_packing_arrangement.
Definition: h264_sei.c:359
int implicit_weight[48][48][2]
Definition: h264.h:375
int cur_chroma_format_idc
Definition: h264.h:781
int8_t * intra4x4_pred_mode
Definition: h264.h:384
int long_arg
index, pic_num, or num long refs depending on opcode
Definition: h264.h:289
uint8_t * rbsp_buffer
Definition: h264.h:492
int sei_ct_type
Bit set of clock types for fields/frames in picture timing SEI message.
Definition: h264.h:723
int ref2frm[MAX_SLICES][2][64]
reference to frame number lists, used in the loop filter, the first 2 are for -2,-1 ...
Definition: h264.h:447
#define MB_TYPE_16x8
Definition: avcodec.h:898
Core video DSP helper functions.
int bit_depth_luma
bit_depth_luma_minus8 + 8
Definition: h264.h:226
static av_always_inline int get_chroma_qp(const H264Context *h, int t, int qscale)
Get the chroma qp.
Definition: h264.h:1001
int ff_h264_field_end(H264Context *h, H264SliceContext *sl, int in_setup)
Definition: h264_picture.c:154
int prev_poc_lsb
poc_lsb of the last reference pic for POC type 0
Definition: h264.h:626
void ff_h264_set_erpic(ERPicture *dst, H264Picture *src)
Definition: h264_picture.c:131
uint8_t zigzag_scan8x8_cavlc_q0[64]
Definition: h264.h:585
int8_t ref_cache[2][5 *8]
Definition: h264.h:469
Decoded Picture Buffer (DPB).
Definition: vaapi_h264.c:81
Definition: h264.h:113
#define IS_8X8(a)
Definition: mpegutils.h:85
int luma_log2_weight_denom
Definition: h264.h:368
int chroma_weight[48][2][2][2]
Definition: h264.h:374
Frame Packing Arrangement Type.
Definition: h264.h:261
H264Picture cur_pic
Definition: h264.h:510
int sei_display_orientation_present
display orientation SEI message
Definition: h264.h:714
int content_interpretation_type
Definition: h264.h:708
int mb_width
Definition: h264.h:593
enum AVPictureType pict_type
Definition: h264.h:684
void ff_h264_draw_horiz_band(const H264Context *h, H264SliceContext *sl, int y, int height)
Definition: h264.c:98
int current_slice
current slice number, used to initialize slice_num of each thread/context
Definition: h264.h:666
buffering period (H.264, D.1.1)
Definition: h264.h:133
int mb_width
pic_width_in_mbs_minus1 + 1
Definition: h264.h:188
int slice_group_count
num_slice_groups_minus1 + 1
Definition: h264.h:240
uint32_t * mb2b_xy
Definition: h264.h:544
H264Ref ref_list[2][48]
0..15: frame refs, 16..47: mbaff field refs.
Definition: h264.h:444
uint8_t field_scan8x8_cavlc_q0[64]
Definition: h264.h:588
int cpb_cnt
See H.264 E.1.2.
Definition: h264.h:222
int cur_bit_depth_luma
Definition: h264.h:782
AVBufferRef * ref_index_buf[2]
Definition: h264.h:308
int delta_poc_bottom
Definition: h264.h:622
H264Picture last_pic_for_ec
Definition: h264.h:511
int au_pps_id
pps_id of current access unit
Definition: h264.h:553
const uint8_t * intra_pcm_ptr
Definition: h264.h:449
H264DSPContext h264dsp
Definition: h264.h:503
int ff_h264_get_profile(SPS *sps)
compute profile from sps
Definition: h264.c:1190
int crop_top
Definition: h264.h:331
unsigned int left_samples_available
Definition: h264.h:402
int ref_count[2][2]
number of entries in ref_poc (FIXME need per slice)
Definition: h264.h:320
uint8_t(*[2] mvd_table)[2]
Definition: h264.h:482
uint8_t field_scan8x8[64]
Definition: h264.h:581
int slice_type_fixed
Definition: h264.h:353
#define av_always_inline
Definition: attributes.h:37
int slice_beta_offset
Definition: h264.h:363
int8_t * intra4x4_pred_mode
Definition: h264.h:530
int dist_scale_factor_field[2][32]
Definition: h264.h:435
int cpb_removal_delay_length
cpb_removal_delay_length_minus1 + 1
Definition: h264.h:224
8: frame tripling
Definition: h264.h:154
#define AV_RN64A(p)
Definition: intreadwrite.h:530
uint8_t field_scan_q0[16]
Definition: h264.h:586
#define LIST_NOT_USED
Definition: h264.h:535
int mb_field_decoding_flag
Definition: h264.h:416
uint8_t(* non_zero_count)[48]
Definition: h264.h:533
unsigned int crop_bottom
frame_cropping_rect_bottom_offset
Definition: h264.h:199
uint8_t * bipred_scratchpad
Definition: h264.h:452
float min
AVClass * av_class
Definition: h264.h:500
int sei_recovery_frame_cnt
recovery_frame_cnt from SEI message
Definition: h264.h:742
int droppable
Definition: h264.h:522
int level_idc
Definition: h264.h:176
int nal_ref_idc
Definition: h264.h:600
GetBitContext gb
Definition: h264.h:347
uint8_t field_scan[16]
Definition: h264.h:580
int cabac_init_idc
Definition: h264.h:489
int b_stride
Definition: h264.h:546
int sei_dpb_output_delay
dpb_output_delay in picture timing SEI message, see H.264 C.2.2
Definition: h264.h:728
recovery point (frame # to decoder sync)
Definition: h264.h:137
Context Adaptive Binary Arithmetic Coder.
int left_cbp
Definition: h264.h:432
int chroma_weight_flag[2]
7.4.3.2 chroma_weight_lX_flag
Definition: h264.h:371
int short_ref_count
number of actual short term references
Definition: h264.h:657
void ff_h264_init_dequant_tables(H264Context *h)
Definition: h264_slice.c:367
int mb_slice_group_map_type
Definition: h264.h:241
enum AVColorSpace colorspace
Definition: h264.h:207